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March 26, 2026Journal of Fluid Mechanics0 citationsOpen Access

Modification of turbulence by the movement of a spherical vortex

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IEI. EamesUniversity College LondonJFJan‐Bert FlórInstitut polytechnique de Grenoble

Key Points

  • This research investigates how a three-dimensional vortex affects ambient turbulence through its movement.
  • Theoretical analysis using rapid distortion theory
  • Numerical simulations of turbulence
  • Examination of local and non-local changes in vorticity
  • Study of both structured and unstructured turbulence cases
  • The vortex creates permanent distortions in surrounding turbulence
  • Significant changes in the far-field turbulence due to reflux effects
  • Quantification of vortex-induced strain on turbulence structures
  • Insights into turbulent-turbulent interfaces and coherent structure roles

Abstract

This paper presents a theoretical and computational investigation into how a propagating three-dimensional vortex modifies ambient turbulence. Using rapid distortion theory and numerical simulations, the study explores both local and non-local changes in the external vorticity field resulting from fluid displacement and stretching. Cases involving structured and unstructured turbulence reveal that the vortex introduces permanent distortions along its path, and alters the far field turbulence through reflux effects. The findings extend classical models by quantifying the impact of vortex-induced strain and displacement on turbulence, offering new insights into turbulent–turbulent interfaces and the role of coherent structures in modulating external turbulent fields.

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Cite This Study

Eames et al. (2026) studied this question.

synapsesocial.com/papers/69c4ccd6fdc3bde448918734https://doi.org/10.1017/jfm.2026.11270
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